Phase-reassembled high-entropy fluorites for advanced thermal barrier materials

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초록

Thermal insulating materials are in high demand for heat flux regulation as they enhance energy conversion efficiency and reduce the consumption of fossil fuels. In this study, phase-reassembled high-entropy oxides (HEOs) were successfully produced via conventional solid-state reaction, and their thermophysical properties were investigated. Promising thermal barrier coating (TBC) candidates, A2B2O7 and A3B′O7 oxides, were reassembled to a single defective fluorite structure to further reduce the thermal conductivity via an entropy-stabilization strategy. The phase-reassembled HEO ceramics exhibited low thermal conductivity (1.06 W/m·K) and glass-like thermal conduction behavior owing to their highly distorted crystal structure. In addition, their compatible thermal expansion (∼9.95 × 10−6/K) suggests that the phase-reassembled HEOs are promising candidates for new thermal barrier materials. This study proposes a new strategy for reducing the thermal conductivity via phase reassemble beyond simply increasing the number of components.

키워드

Thermal barrier coatingsOxide ceramicsGlass-like thermal conductivityThermal expansion coefficientsRADIATION TOLERANCECONDUCTIVITYPYROCHLORECERAMICSZIRCONATESTRATEGIESDESIGNLUERRE
제목
Phase-reassembled high-entropy fluorites for advanced thermal barrier materials
저자
Song, Dowon유명우Pyeon, JanghyeokJeon, Hak-BeomSong, TaeseupPaik, UngyuYang, Byung-ilJung, Yeon-GilOh, Yoon-Suk
DOI
10.1016/j.jmrt.2023.01.170
발행일
2023-03
유형
Article
저널명
Journal of Materials Research and Technology
23
페이지
2740 ~ 2749

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